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一种用于分析致病细胞内事件的重封细胞系统:糖尿病条件下胞吞途径的干扰。

A resealed-cell system for analyzing pathogenic intracellular events: perturbation of endocytic pathways under diabetic conditions.

机构信息

Department of Life Sciences, Graduate School of Arts and Sciences, The University of Tokyo, Meguro-ku, Tokyo, Japan.

出版信息

PLoS One. 2012;7(8):e44127. doi: 10.1371/journal.pone.0044127. Epub 2012 Aug 29.

Abstract

Cell-based assay systems that can serve as cellular models of aberrant function in pathogenic organs would be novel and useful tools for screening drugs and clarifying the molecular mechanisms of various diseases. We constructed model cells that replicated the conditions in diabetic hepatocytes by using the cell resealing technique, which enables the exchange of cytosol. The plasma membrane of HeLa cells was permeabilized with the streptococcal toxin streptolysin O, and cytosol that had been prepared from wild-type or db/db diabetic mice was introduced into the resulting semi-intact cells. By resealing the plasma membrane by exposure to Ca(2+), we created WT or Db model cells, in which the cytosolic conditions replicated those of healthy or diabetic liver. Interestingly, phosphorylation of p38 MAPK was promoted, whereas the level of endosomal phosphatidylinositol-3-phosphate was decreased, in Db cells. We investigated several endocytic pathways in WT and Db cells, and found that retrograde endosome-to-Golgi transport was delayed in a p38 MAPK-dependent manner in Db cells. Furthermore, the degradation pathway of the EGF receptor from endosomes to lysosomes was enhanced in Db cells, and this did not depend on the activation of p38 MAPK. The disease model cell system should become a powerful tool for the detection of aberrant processes in cells under pathogenic conditions and for therapeutic applications.

摘要

基于细胞的检测系统,可作为致病器官中功能异常的细胞模型,将是用于筛选药物和阐明各种疾病分子机制的新颖而有用的工具。我们构建了模型细胞,这些细胞通过使用细胞重封技术来模拟糖尿病肝细胞的条件,该技术允许细胞质交换。使用链球菌溶血素 O 使 HeLa 细胞的质膜穿孔,并将从野生型或 db/db 糖尿病小鼠中制备的细胞质导入所得的半完整细胞中。通过暴露于 Ca(2+)使质膜重封,我们创建了 WT 或 Db 模型细胞,其中细胞质条件复制了健康或糖尿病肝脏的条件。有趣的是,Db 细胞中 p38 MAPK 的磷酸化被促进,而内体磷脂酰肌醇-3-磷酸的水平降低。我们研究了 WT 和 Db 细胞中的几种内吞途径,发现 Db 细胞中内体到高尔基体的逆行内体运输以 p38 MAPK 依赖的方式延迟。此外,Db 细胞中 EGF 受体从内体到溶酶体的降解途径增强,而这并不依赖于 p38 MAPK 的激活。该疾病模型细胞系统应成为检测致病条件下细胞中异常过程和治疗应用的有力工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c0e8/3430665/c4550a7f3b41/pone.0044127.g001.jpg

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